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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Design of vehicle parts under impact loading using a multi-objective design approach
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Design of vehicle parts under impact loading using a multi-objective design approach

机译:利用多目标设计方法设计冲击载荷下的车辆部件

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摘要

In this study, a multi-objective design approach with accelerated methodology was developed for a B-pillar (side door pillar) in which the intrusion velocity was decreased and the crash energy absorbed. The B-pillar material characteristics were determined using a drop tower test to accelerate the design process instead of a vehicle crash test. A finite element simulation of the drop tower test was conducted, and the results obtained from the simulation were confirmed with the test results. The side impact finite element model was simulated according to the Euro NCAP test protocol, and the B-pillar was divided into two sections using the results obtained from the analysis. Tailor rolled blank and Tailor welded blank B-pillar crash simulations were performed, and the results were compared to examine the intrusion velocity. Alternative design solutions for single and multi-material B-pillars were conducted to design an optimum B-pillar structure. The design functions were created using the radial basis function method, and the failure criteria were determined for the analyses. Optimization problems for weight minimization and maximum energy absorption were established and solved using meta-heuristic methods. The approach suggested in this study can be used in accelerated B-pillar designs.
机译:在这项研究中,为B柱(侧门柱)开发了一种具有加速方法的多目标设计方法,其中入侵速度降低,并且吸收的碰撞能量。使用滴塔测试测定B柱材料特性以加速设计过程而不是车辆碰撞试验。进行了滴塔试验的有限元模拟,并通过测试结果证实了从模拟中获得的结果。根据欧洲NCAP测试方案模拟侧面影响有限元模型,并且使用从分析中获得的结果分成两个部分。进行裁缝卷起的坯料和裁缝焊接空白B柱碰撞模拟,并将结果进行了比较,以检查入侵速度。进行了单材料和多材料B柱的替代设计解决方案以设计最佳B柱结构。使用径向基函数方法创建设计功能,并确定故障标准进行分析。建立并解决了重量最小化和最大能量吸收的优化问题,并使用元型方法解决。本研究中建议的方法可用于加速的B柱设计。

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